Sex-specific associations of gestational age at birth and birth size with early life within-network brain
Diana C Pacyga1, Jake E Thistle1, Emily J Werder2,3
1Department of Epidemiology, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.
Insights
Birth size, not gestational age, impacts early brain network development. Larger or smaller birth sizes are linked to altered functional brain connectivity in young children, with sex-specific patterns observed.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatrics
Background:
- Gestational age and birth size are known risk factors for behavioral and cognitive issues in early life.
- The specific impact of these birth parameters on functional brain network dynamics during early development remains poorly understood.
Purpose of the Study:
- To explore the associations between birth measures (gestational age, birth weight, birth length, weight-to-length ratio) and longitudinal functional brain connectivity in children under three years old.
- To investigate sex-specific relationships between birth size and brain network dynamics.
Main Methods:
- Utilized resting-state functional magnetic resonance imaging (fMRI) data from the Baby Connectome Project for 254 children (<3 years old).
- Assessed functional connectivity within seven canonical brain networks (Yeo atlas).
- Employed covariate-adjusted multiple linear mixed models to analyze associations between birth measures and network connectivity, considering sex-specific effects.
Main Results:
- Birth size measures, not gestational age, were significantly associated with functional brain network connectivity.
- Both higher and lower birth sizes (relative to average) showed associations with altered connectivity in networks including frontoparietal, limbic, default mode, and sensorimotor.
- Sex-stratified analyses revealed distinct patterns: birth size affected frontoparietal and default mode networks in both sexes, with additional networks implicated in males (sensorimotor, limbic, dorsal attention) and females (salience, visual).
Conclusions:
- Birth size is sex-specifically associated with early life brain network dynamics.
- These findings suggest that variations in birth size may influence neurodevelopmental trajectories, potentially impacting later behavioral and cognitive outcomes.
Abstract:
Gestational age at birth and birth size are major risk factors for early life behavioral/cognitive problems, but their impact on functional brain network dynamics during this period is not understood. Our objective was to conduct an exploratory study to evaluate associations of birth measures with longitudinal early life functional connectivity. The Baby Connectome Project used resting-state functional magnetic resonance imaging to assess connectivity within seven canonical brain networks (Yeo atlas): dorsal attention, salience, limbic, frontoparietal, default mode, visual, and sensorimotor. For 254 children <3 years old (contributing 583 observations), birth weight, birth length, and gestational age at birth were self-reported or abstracted from medical records, and we calculated weight-to-length ratio. Using covariate-adjusted multiple linear mixed models, we evaluated overall and sex-specific associations of birth measures as continuous variables and in tertiles with each network, which were Fisher r-to-z-transformed. Most children (54% female) were born to non-Hispanic White (80%) and college-educated (83%) mothers, were delivered ≥37 weeks gestation (97%), and had birth weights ≥2.5 kg (98%). Only birth size measures were associated with brain network connectivity. Compared with that in tertile 2, frontoparietal network connectivity was higher in birth weight tertile 1 (β: 0.02; 95% CI: 0.00, 0.04) and tertile 3 (β: 0.03; 95% CI: 0.01, 0.05). Also, compared with birth size tertile 2, birth size tertile 3 was associated with higher limbic (birth length β: 0.03; 95% CI: 0.00, 0.07) and default mode (birth length β: 0.02; 95% CI: 0.00, 0.03), but decreased sensorimotor (birth weight β: -0.03; 95% CI: -0.05, 0.00; birth length β: -0.03; 95% CI: -0.05, 0.00) network connectivity. Compared with birth size tertile 2, birth size tertile 1 was associated with lower limbic (birth weight β: -0.04; 95% CI: -0.08, 0.00) and default mode (weight-to-length ratio β: -0.02; 95% CI: -0.04, 0.00). In sex-stratified models, birth size was associated with frontoparietal and default mode networks in both sexes; sensorimotor, limbic, and dorsal attention networks in males; and salience and visual networks in females. Associations followed a U-shaped pattern in females, whereas those in males appeared at only the lowest or highest tertile. In this non-clinical sample, birth size was sex-specifically associated with early life brain network dynamics. This may have implications for later neurodevelopment.
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